Fiber Composites Made of Low-Dimensional Carbon Materials

Yan-qing Xu, Xian Zhang
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Abstract

In recent years, a scientific shift has been observed that the use of carbon-based nanomaterials in different composite materials can improve their mechanical, thermal, and electrical properties. Different carbon-based nanomaterials have various structures and mechanical, electrical, and thermal conductivity characteristics. By combining with different material composite methods, carbon composite materials with different structures can be prepared. Through the optimization of material structure, carbon composite materials with high performance can be obtained. SP 2 hybrid carbon materials, such as carbon nanotubes (CNTs), carbon fiber (CF), and graphene, have excellent electrical, thermal, and mechanical properties due to their regular carbon six-membered ring structure, so they are the main low-dimensional carbon materials and are widely used in composite research. In this chapter, the research progress of carbon nanotubes, carbon fibers, and graphene-based fibers (GBFs) in composite materials are introduced, respectively, and the preparation method, molding process, performance, and application in industry are summarized. Finally, the existing problems and future development trend of carbon-based composites are prospected.
低维碳材料纤维复合材料
近年来,科学上的一个转变已经被观察到,在不同的复合材料中使用碳基纳米材料可以改善它们的机械、热学和电学性能。不同的碳基纳米材料具有不同的结构和机械、电学和导热特性。结合不同的材料复合方法,可以制备出不同结构的碳复合材料。通过对材料结构的优化,可以获得高性能的碳复合材料。SP 2杂化碳材料,如碳纳米管(CNTs)、碳纤维(CF)、石墨烯等,由于其规则的碳六元环结构,具有优异的电学、热学和力学性能,是目前主要的低维碳材料,广泛应用于复合材料研究。本章分别介绍了复合材料中碳纳米管、碳纤维和石墨烯基纤维的研究进展,并对其制备方法、成型工艺、性能和工业应用进行了综述。最后,对碳基复合材料存在的问题和未来的发展趋势进行了展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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